Français

Jingyi Optoelectronics launches a transmittance detector to detect the near-infrared transmittance characteristics of plastic materials

193
2024-04-11 15:28:09
Voir la traduction

Laser welding plastic transmittance tester is an important industrial testing equipment used to measure the transmittance of plastic after welding, in order to evaluate welding quality and product performance. With the widespread application of plastic products in various fields, the requirements for plastic welding quality and transparency are also increasing. Therefore, laser welded plastic transmittance detectors play a crucial role in the plastic processing industry.

The core principle of a laser welding plastic transmittance detector is to use a laser beam to irradiate the test sample and calculate the transmittance by measuring the intensity of the transmitted light. During laser welding, plastic materials are subjected to high temperature and pressure in the welding area, resulting in melting and recrystallization, forming a continuous whole. However, during the welding process, defects such as poor welding, porosity, and cracks may occur, which can have a negative impact on the transparency performance. Therefore, by measuring the transmittance, welding quality can be detected and evaluated in a timely manner, providing a basis for product quality control and improvement.

The laser welding plastic transmittance detector has various advantages. Firstly, it uses laser as the light source, which has the characteristics of single wavelength, high brightness, and good directionality, and can provide stable and reliable measurement results. Secondly, the instrument has fast and accurate measurement capabilities, which can complete a large number of sample measurements in a short time and improve production efficiency. In addition, the instrument also has the characteristics of easy operation and high degree of automation, reducing the difficulty and error of manual operation, and improving the accuracy and reliability of measurement.

In practical applications, laser welded plastic transmittance detectors are widely used in fields such as automobiles, electronics, and healthcare. For example, in automotive manufacturing, plastic welding is widely used in the manufacturing process of components such as car bodies and interiors. By using a laser welding plastic transmittance detector, welding defects can be detected in a timely manner, improving the sealing and appearance quality of the vehicle body. In the electronics industry, plastic products are widely used in packaging, connectors, and other fields. laser
The measurement of welding plastic transmittance detector can ensure welding quality, improve product reliability and stability. In the medical industry, plastic products are widely used in fields such as medical devices and surgical instruments. The measurement of laser welding plastic transmittance detector can ensure the transparency and clarity of medical devices, improve the accuracy and safety of surgical operations.

In addition to the above application areas, laser welded plastic transmittance detectors can also be applied in other fields, such as aerospace, construction, etc. With the continuous progress of technology and the expansion of applications, laser welded plastic transmittance detectors will play an important role in more fields.

In summary, laser welded plastic transmittance detector is an important industrial testing equipment with broad application prospects and market demand. It can not only provide accurate and reliable measurement results, but also improve production efficiency and product quality. With the continuous development of technology and the expansion of the market, laser welding plastic transmittance detectors will be applied and promoted in more fields.

We use Jingyi Optoelectronics to launch this transmittance detector specifically designed to detect the near-infrared transmittance characteristics of plastic materials, which scans the transmittance of injection molded parts in full screen. According to the needs, the detection area can be freely defined and the transmittance range can be set. The transmittance and impurities in the detection area can be automatically extracted and identified, and the impurity position can be automatically marked. This product is suitable for multi-point testing of samples, avoiding missed tests. The testing operation is convenient, and there is no need for positioning fixtures. The testing speed is extremely fast, and the measurement is completed within one second.

Source: Sohu

Recommandations associées
  • Breakthrough! Extending the lifespan of solar panels to 50 years using lasers

    Recently, the National Renewable Energy Laboratory (NREL) under the US Department of Energy has made a revolutionary breakthrough by developing a concept validation method aimed at completely removing polymers from solar panel manufacturing, thereby achieving more efficient and environmentally friendly recycling.Solar panels have always been praised for their recyclability. However, the thin plast...

    2024-04-30
    Voir la traduction
  • NASA will demonstrate laser communications on the space station to improve space communications capabilities

    Recently, in order to improve the National Aeronautics and Space Administration (NASA) space communications capabilities, NASA plans to send a technology demonstration called "Integrated LCRD Low Earth Orbit User Modem and Amplifier Terminal (ILLUMA-T)" to the space station in 2023.ILLUMA-T and the Laser Communications Relay Demonstration (LCRD), launched in December 2021, will together comp...

    2023-09-04
    Voir la traduction
  • Switzerland's top 100 sales drop to 330.9 million Swiss francs in the first half of the year

    Recently, Swiss company Bystronic disclosed its financial performance for the first half of 2024.The financial report shows that the market situation for the Swiss Super 100 in the first half of 2024 remains very tense. Customers in various end markets are unable to fully utilize their production capacity, and operations in all regions are relatively cautious.Despite Swiss supercar actively reduci...

    2024-07-24
    Voir la traduction
  • German research institute develops a new nanosecond laser process

    Recently, the Fraunhofer Institute (HHI) has developed a technology for processing aluminum alloy materials using reactive gas assisted nanosecond lasers, which can be used to produce electronic box samples for spacecraft manufacturing. This development project is part of the NanoBLAST project, in close collaboration with thermal engineering company Azimut Space GmbH, aimed at manufacturing surfac...

    2024-09-10
    Voir la traduction
  • Beijing Institute of Technology has made significant progress in the study of ultrafast carrier dynamics in optoelectronic functional crystals

    Recently, teachers and students from the Institute of Solid State Laser and Ultrafast Photonics at the School of Physics and Optoelectronic Engineering have made significant progress in the study of ultrafast carrier dynamics in optoelectronic functional crystals. The related research results are titled "Anisotropic carrier dynamics and laser fabricated luminosity patterns on oriented single cryst...

    2024-02-21
    Voir la traduction